Справочник MOSFET. GSM3310W

 

GSM3310W MOSFET - описание производителя. Даташиты. Основные параметры и характеристики. Поиск аналога. Справочник


   Наименование прибора: GSM3310W
   Тип транзистора: MOSFET
   Полярность: N
   Pdⓘ - Максимальная рассеиваемая мощность: 36 W
   |Vds|ⓘ - Предельно допустимое напряжение сток-исток: 30 V
   |Vgs|ⓘ - Предельно допустимое напряжение затвор-исток: 20 V
   |Id|ⓘ - Максимально допустимый постоянный ток стока: 16 A
   Tjⓘ - Максимальная температура канала: 150 °C
   trⓘ - Время нарастания: 8 ns
   Cossⓘ - Выходная емкость: 180 pf
   Rdsⓘ - Сопротивление сток-исток открытого транзистора: 0.017 Ohm
   Тип корпуса: DFN3X3-8L

 Аналог (замена) для GSM3310W

 

 

GSM3310W Datasheet (PDF)

 ..1. Size:816K  globaltech semi
gsm3310w.pdf

GSM3310W
GSM3310W

GSM3310W GSM3310W 30V N-Channel Enhancement Mode MOSFETProduct Description Features GSM3310W, N-Channel enhancement mode 30V/16A,RDS(ON)=17m@VGS=10V MOSFET, uses Advanced Trench Technology to 30V/10A,RDS(ON)=19m@VGS=4.5V provide excellent RDS(ON), low gate charge. Super high density cell design for extremelylow RDS (ON) These devices are particularly suited f

 8.1. Size:856K  globaltech semi
gsm3316w.pdf

GSM3310W
GSM3310W

GSM3316W GSM3316W 60V N-Channel Enhancement Mode MOSFET Product Description Features GSM3316W, N-Channel enhancement mode 60V/8A,RDS(ON)=140m@VGS=10V MOSFET, uses Advanced Trench Technology to 60V/6A,RDS(ON)=148m@VGS=4.5V provide excellent RDS(ON), low gate charge. Super high density cell design for extremelylow RDS (ON) These devices are particularly suited

 9.1. Size:1456K  globaltech semi
gsm3346w.pdf

GSM3310W
GSM3310W

GSM3346W 40V N & P Pair Enhancement Mode MOSFET Product Description Features GSM3346W, N & P Pair enhancement mode N-ChannelMOSFET, uses Advanced Trench Technology to 40V/15A,RDS(ON)=28m@VGS=10V provide excellent RDS(ON), low gate charge. 40V/12A,RDS(ON)=38m@VGS=4.5V P-ChannelThese devices are particularly suited for low -40V/-12A,RDS(ON)=45m@VGS=-10V voltage p

 9.2. Size:897K  globaltech semi
gsm3309ws.pdf

GSM3310W
GSM3310W

GSM3309WS GSM3309WS 30V N-Channel Enhancement Mode MOSFETProduct Description Features GSM3309WS, N-Channel enhancement mode 30V/20A,RDS(ON)=8m@VGS=10V MOSFET, uses Advanced Trench Technology to 30V/15A,RDS(ON)=11m@VGS=4.5V provide excellent RDS(ON), low gate charge. Super high density cell design for extremely low RDS(ON) These devices are particularly suited

 9.3. Size:1204K  globaltech semi
gsm3366w.pdf

GSM3310W
GSM3310W

GSM3366W 60V N & P Pair Enhancement Mode MOSFET Product Description Features GSM3366W, N & P Pair enhancement mode N-ChannelMOSFET, uses Advanced Trench Technology to 60V/12A,RDS(ON)=48m@VGS=10V provide excellent RDS(ON), low gate charge. 60V/10A,RDS(ON)=54m@VGS=4.5V P-ChannelThese devices are particularly suited for low -60V/-8A,RDS(ON)=105m@VGS=-10V voltage p

 9.4. Size:1359K  globaltech semi
gsm3326ws.pdf

GSM3310W
GSM3310W

GSM3326WS 30V N & P Pair Enhancement Mode MOSFET Product Description Features GSM3326WS, N & P Pair enhancement mode N-ChannelMOSFET, uses Advanced Trench Technology to 30V/12A,RDS(ON)=36m@VGS=10V provide excellent RDS(ON), low gate charge. 30V/10A,RDS(ON)=46m@VGS=4.5V P-ChannelThese devices are particularly suited for low -30V/-8A,RDS(ON)=60m@VGS=-10V voltage

 9.5. Size:868K  globaltech semi
gsm3302w.pdf

GSM3310W
GSM3310W

GSM3302W GSM3302W 20V N-Channel Enhancement Mode MOSFETProduct Description Features GSM3302W, N-Channel enhancement mode 20V/14A,RDS(ON)=14m@VGS=4.5V MOSFET, uses Advanced Trench Technology to 20V/12A,RDS(ON)=18m@VGS=2.5V provide excellent RDS(ON), low gate charge. 20V/10A,RDS(ON)=26m@VGS=1.8V Super high density cell design for extremelyThese devices are

 9.6. Size:865K  globaltech semi
gsm3306ws.pdf

GSM3310W
GSM3310W

GSM3306WS GSM3306WS 30V N-Channel Enhancement Mode MOSFETProduct Description Features GSM3306WS, N-Channel enhancement mode 30V/20A,RDS(ON)=5.6m@VGS=10V MOSFET, uses Advanced Trench Technology to 30V/15A,RDS(ON)=7.4m@VGS=4.5V provide excellent RDS(ON), low gate charge. Super high density cell design for extremelylow RDS (ON) These devices are particularly sui

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